Spectrograph recycling
Spectrographic measurements are often limited by the amount of light that is available. Photons that are not collected or measured reduce the signal to noise and therefore reduce measurement precision. This invention collects the zero order light and sends it through the spectrometer again. In an atmospheric LIDAR, the zero order recycling is estimated to increase the rotational Raman signal by an additional 20%. A grating based spectrometer where the zero order light is collected by a lens or mirror and focused into a fiber optic that sends the light to the input slit where it is directed into the spectrometer again. There can be a plurality of recycle fibers. The detector can be either a single linear array or a two dimensional array such as a CCD or CMOS camera.
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This invention uses or recycles the zero order light from a diffraction grating based spectrograph. Estimates of the improvement made in the performance of a spectrograph so configured indicate that the output signal could be increased by 20 percent.
B. Summary of the Prior ArtSpectrographic measurements are often limited by the amount of light that is available. Photons that are not collected or measured reduce the signal to noise, and therefore reduce measurement precision. In current spectrographs, the zero order light is not used even though it is a significant portion of the incoming light. Typically, the zero order light is absorbed to reduce the potential for the zero order light scattering and contaminating the diffracted light that one wishes to measure.
II. SUMMARY OF THE INVENTIONSpectrographic measurements are often limited by the amount of light that is available. Photons that are not collected or measured reduce the signal to noise and therefore reduce measurement precision. This invention collects the zero order light and sends it through the spectrometer again. In an atmospheric LIDAR, the zero order recycling is estimated to increase the rotational Raman signal by an additional 20%. The present invention is directed to providing and implementing a grating-based spectrometer where the zero order light is collected by a lens or mirror and focused into a fiber optic that sends the light to the input slit where it is re-directed back into the spectrometer.
The present invention is illustrated in the accompanying drawings, wherein:
The embodiments of the present invention will be described hereinbelow in conjunction with the above-described drawings.
The light diffracted by the grating 22 is captured by a focusing mirror 23 and an image of the input fiber for a wavelength is reconstructed on the detectors 25. The diffracted light 13 and 14 for the first wavelength 13 and second wavelength 14 is collected by the focusing mirror 23 and focused on the detector array 25. In
In a spectrometer 200 according to the present invention, as shown in
The detector elements 40 are shown to be rectangular in this embodiment, but could be square, circular or any other arrangement known in the art. In this embodiment, the detector array 25 is implemented as an array of photomultipliers that have a rectangular active area. Other geometries for a detector array or other photodetectors with similar functionalities as known in the art could also be used.
It should be noted that, in the examples illustrated in
While the preferred embodiment uses a single recycle, there may be cases where additional recycle fibers could be added to the system to gain additional signal. As such, the recycle fiber optic 30 may be implemented as a single recycle fiber, a plurality of recycle fibers, or any other device known in the art having similar functionality transmit the zero order light from the focusing element 24 back to the input slit 20. The limiting factor in the number of recycle fibers is the height of the input slit 20. Each recycle fiber occupies a portion of the slit 20 and the recycle fibers could over fill the slit with the result of overfilling the slit and causing a loss in inputted light energy.
Although the present invention has been fully described in connection with the preferred embodiment thereof with reference to the accompanying drawings, it is to be noted that various changes and modifications will be apparent to those skilled in the art. Such changes and modifications are to be understood as included within the scope of the present invention as defined by the appended claims, unless they depart therefrom.
Claims
1. A grating based spectrometer, comprising:
- an input optic fiber;
- a recycling optic fiber;
- a grating;
- a first focusing mirror;
- a detector; and
- a collimating mirror positioned to collimate light from the input optic fiber and direct the light to the grating, wherein a portion of the light striking the grating is reflected into at least a zero order,
- the light diffracted by the grating is captured by the first focusing mirror,
- first and second diffracted light from the grating are collected by the first focusing mirror and focused on the detector, and
- the zero order light is collected and focused into recycling optic fiber that sends the zero order light back to the collimating mirror so as to be directed again into the spectrometer.
2. A grating based spectrometer according to claim 1, further comprising:
- a plurality of recycling optic fibers.
3. A grating based spectrometer according to claim 1, wherein the detector is at least one of a single linear array and a two dimensional array.
4. A grating based spectrometer according to claim 3, wherein the detector is at least one of a CCD and CMOS camera.
5. A grating based spectrometer according to claim 1, further comprising:
- A focusing element operatively positioned to collect and focus the zero order light into the recycling optic fiber.
6. A grating based spectrometer according to claim 3, wherein the focusing element is at least one of a lens and second focusing mirror.
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Type: Grant
Filed: Sep 4, 2019
Date of Patent: May 7, 2024
Patent Publication Number: 20210341334
Assignee: MICHIGAN AEROSPACE CORPORATION (Ypsilanti, MI)
Inventor: Will Johnson (Saline, MI)
Primary Examiner: Edwin C Gunberg
Application Number: 17/272,667
International Classification: G01J 3/02 (20060101); F21V 8/00 (20060101); G01J 3/18 (20060101); G01J 3/28 (20060101); G01S 17/95 (20060101);